Multifunctional Module Design Based on Hybrid CMOS-Memristor Logic Circuit

Chaoqun Ji, Tuo Li, Xiaofeng Zou
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Abstract

With the rapid development of computer technology, logical circuits play an important role in many fields. Semiconductor transistors, as the basic logic circuit unit of modern computer hardware structure, also encounter more and more technical limitations in the highly integrated field such as computer chips. In order to continue Moore's Law effectively, higher requirements need to be put forward for the basic logic unit. The emergence of memristor opens up a new way to explore advanced computing architecture. This paper presents a MRL- based logic circuit in which input and output logic is provided by high and low voltage. Logic gate circuit elements such as XOR, NAND, NOR are implemented in conjunction with CMOS inverters. Through the construction of basic ratio logic gate, the adder and multiplier is simplified, and the result of signal simulation using LTspice software is completely correct. Finally, a multifunctional logic module is innovatively designed.
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基于cmos -忆阻混合逻辑电路的多功能模块设计
随着计算机技术的飞速发展,逻辑电路在许多领域发挥着重要作用。半导体晶体管作为现代计算机硬件结构的基本逻辑电路单元,在计算机芯片等高集成度领域也面临越来越多的技术限制。为了有效地延续摩尔定律,对基本逻辑单元提出了更高的要求。忆阻器的出现为探索先进的计算体系结构开辟了一条新的途径。本文提出了一种基于MRL的高、低压输入输出逻辑电路。逻辑门电路元件,如异或,NAND, NOR与CMOS逆变器一起实现。通过基本比率逻辑门的构建,对加法器和乘法器进行了简化,使用LTspice软件进行信号仿真的结果完全正确。最后,创新性地设计了一个多功能逻辑模块。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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